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Biomedical subjects

P T Klementowicz

Publications and source records attributed to P T Klementowicz.

7 recordsLinked to original sources

Lyme carditis: an important cause of reversible heart block.

Lyme disease is a tick-borne spirochetal infection, characterized by erythema chronicum migrans and an acute systemic illness. The disease is endemic in many parts of the north-eastern United States. Without treatment, late rheumatic, neurologic, and cardiac complications frequently occur. We report four serologically confirmed cases of Lyme carditis in previously healthy young men (mean age, 45 years) from endemic areas. Each presented with severe symptomatic atrioventricular block, three with episodes of prolonged ventricular asystole. Two had permanent pacemakers implanted (one was later removed), and another, very nearly did, before diagnosis. All four patients were treated with antibiotics, and in each case their rhythm returned to sinus, though one patient has Wenckebach second degree block with atrial pacing at 120 beats/min 16 months later. Carditis occurs in 4% to 10% of cases of Lyme disease and usually begins 3 to 6 weeks after the initial illness. It manifests as a transient myocarditis with varying degrees of atrioventricular block. The diagnosis is made primarily on clinical grounds and confirmed by serologic testing. Temporary cardiac pacing is frequently needed by patients who have severe heart block with hemodynamic instability. The evidence suggests that, in most cases, the block is at the level of the atrioventricular node. The block generally resolves completely with antibiotic treatment. Complete heart block rarely persists more than 1 week and the long-term prognosis appears to be excellent. Consideration and prompt recognition of this potentially lethal, but reversible, cause of heart block is crucial in order to avoid inappropriate permanent pacemaker implantation.

Adult

Atrial electrogram analysis: antegrade versus retrograde.

Automatic discrimination between antegrade and retrograde atrial electrograms would prevent endless loop tachycardia and contribute to tachycardia detection algorithms. We tested its feasibility by comparing antegrade and retrograde atrial electrograms in 129 patients at the time of atrial lead implantation. Only unipolar, passive-fixation, endocardial, right atrial appendage leads were included. The mean antegrade amplitude was 4.2 +/- 2.2 mV, and retrograde 2.4 +/- 1.5 mV (P less than 0.001); the mean antegrade slew rate was 2.6 +/- 2.1 mV/ms, and retrograde 1.3 +/- 1.1 mV/ms (P less than 0.001). Morphology was similar in 84 patients (65%). The antegrade amplitude exceeded the retrograde by 1.0 mV in 67%, and by 0.5 mV in 81% of patients. Morphology and slew rate contributed little to the discriminating power of amplitude alone. Thus, amplitude criteria reliably distinguish antegrade from retrograde atrial activity.

Aged

Comparison of myopotential interference in unipolar-bipolar programmable DDD pacemakers.

Myopotential interference (MPI) can inhibit or trigger single and dual chamber unipolar pacemakers while bipolar pacemakers are resistant. Twenty units of two different models of dual chamber pacemaker, each capable of being programmed to single chamber or dual chamber and unipolar or bipolar function were tested to provoke myopotential interference. No patient had evidence of myopotential interference at any sensitivity setting in the bipolar configuration either in atrium or in ventricle. All patients (20/20) interfered with pacemaker function at the highest atrial or ventricular sensitivity settings in the unipolar configuration. T wave sensing occurred at the 0.25 mV sensitivity setting in four patients in pacemaker model 925, in both bipolar and unipolar configurations. Twenty-five percent of patients had myopotential interference at the unipolar atrial sensing threshold and did not allow a setting which would reject myopotential interference while providing satisfactory atrial sensing. Twenty percent (2/10) had myopotential caused ventricular inhibition at the least sensitive ventricular channel setting in model 240G so that myopotential interference could not be avoided in that unit no matter how large the electrogram.

Arrhythmias, Cardiac

Selective atrial sensing in dual chamber pacemakers eliminates endless loop tachycardia.

With the introduction of dual chamber pacemakers that have multiple atrial amplitude sensing values, selective P wave sensing is possible. Five consecutive patients were studied who had 1) retrograde atrioventricular conduction, 2) anterograde atrial signals that were at least 1.4 times larger than their corresponding retrograde atrial signals, and 3) dual chamber pulse generators that are capable of discriminating this difference in atrial amplitude. In each patient the pacemaker was programmed in the DDD mode and the postventricular atrial refractory interval was at least 100 ms shorter than the individual's minimal retrograde conduction time. Two atrial sensitivity settings were evaluated in each patient: a high setting to ensure sensing of both anterograde and retrograde P waves, and a lower setting to allow sensing of anterograde P waves only. Ambulatory electrocardiographic monitoring demonstrated that with a high sensitivity setting, each patient sustained endless loop tachycardia (mean number of episodes 41, range 6 to 143) and that a low atrial sensitivity setting eliminated the tachycardia. With the lower atrial sensitivity setting, there was only sporadic atrial undersensing (1.5 episodes for each 1,000 P waves). This study demonstrates that atrial signals having different amplitudes can be selectively sensed. Additionally, dual chamber pulse generators with multiple atrial amplitude sensitivity values can discriminate anterograde from retrograde P waves, ensure anterograde sensing, reject retrograde P waves and eliminate endless loop tachycardia.

Aged

Spontaneous endless loop tachycardia.

Pacemaker-mediated endless loop tachycardia is usually caused by a P wave displaced from the physiologic position preceding a QRS complex to a time of atrial channel sensitivity after the QRS. Five cases are described of endless loop tachycardia starting after a normally-timed P wave, either spontaneous and preceding a ventricular stimulus or a P wave produced by an atrial channel stimulus followed by a ventricular stimulus and QRS complex. In each instance, the atrial refractory interval (ARI) was shorter than the retrograde conduction time. In four of the cases, prolongation of the atrial refractory interval after the ventricular event ended the tachycardias. In the fifth, in which the pulse generator could not be so programmed, the ventricular inhibited mode was required.

Adult

Stability of atrial sensing and pacing after dual chamber pulse generator implantation.

The continued efficacy of dual chamber pacing is predicated on the stability of both atrial and ventricular electrodes. The introduction of the tined atrial J lead has decreased the incidence of atrial lead dislodgment, allowing for continued effective sensing and pacing. To study the evolution of atrial pacing and sensing threshold, 54 patients with identical pulse generators and atrial electrodes were evaluated for 58 +/- 29 weeks (mean +/- SD). Immediately after pacemaker implantation in 39 patients, the amplitude of the atrial signal was measured by programming the pulse generator to the lowest sensitivity that assured pacing in the atrial synchronous mode. Three levels of atrial sensing were possible: high (0.5 mV), intermediate (1.3 mV) and low (2.5 mV) sensitivity. Three patients had a high, 16 patients had a medium and 20 patients had a low atrial sensitivity. The P wave amplitude and slew rate measured on a physiologic recorder did not differ significantly between the latter two groups. The atrial charge threshold increased from 1.8 +/- 1.3 microcoulombs (microC) to a maximal value of 2.5 +/- 1.3 microC, 3 days to 1 week after implantation (p = 0.02). This remained elevated for 1 to 3 months (p = 0.05) and then decreased, remaining stable over the ensuing year. The atrial sensitivity for the group with noninvasive measurement did not change significantly, although there was considerable patient variation. For 54% of the patients, atrial sensing remained stable or improved. In 26% of the patients, further programming to higher sensitivity settings ws required. In the remaining 20% of the patients, the atrial sensitivity setting fluctuated.(ABSTRACT TRUNCATED AT 250 WORDS)

Aged